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1.
J Am Chem Soc ; 144(41): 18938-18947, 2022 10 19.
Article in English | MEDLINE | ID: mdl-36197299

ABSTRACT

The fish oil constituent docosahexaenoic acid (DHA, 22:6 n-3) is a signaling lipid with anti-inflammatory properties. The molecular mechanisms underlying the biological effect of DHA are poorly understood. Here, we report the design, synthesis, and application of a complementary pair of bio-orthogonal, photoreactive probes based on the polyunsaturated scaffold DHA and its oxidative metabolite 17-hydroxydocosahexaenoic acid (17-HDHA). In these probes, an alkyne serves as a handle to introduce a fluorescent reporter group or a biotin-affinity tag via copper(I)-catalyzed azide-alkyne cycloaddition. This pair of chemical probes was used to map specific targets of the omega-3 signaling lipids in primary human macrophages. Prostaglandin reductase 1 (PTGR1) was identified as an interaction partner that metabolizes 17-oxo-DHA, an oxidative metabolite of 17-HDHA. 17-oxo-DHA reduced the formation of pro-inflammatory lipids 5-HETE and LTB4 in human macrophages and neutrophils. Our results demonstrate the potential of comparative photoaffinity protein profiling for the discovery of metabolic enzymes of bioactive lipids and highlight the power of chemical proteomics to uncover new biological insights.


Subject(s)
Docosahexaenoic Acids , Fatty Acids, Omega-3 , Humans , Docosahexaenoic Acids/metabolism , Docosahexaenoic Acids/pharmacology , Azides , Copper/pharmacology , Biotin/pharmacology , Leukotriene B4/pharmacology , Fatty Acids, Omega-3/pharmacology , Macrophages , Fish Oils/pharmacology , Anti-Inflammatory Agents/pharmacology , Alkynes/pharmacology , Prostaglandins , Oxidoreductases
2.
Lancet ; 385 Suppl 1: S66, 2015 Feb 26.
Article in English | MEDLINE | ID: mdl-26312888

ABSTRACT

BACKGROUND: Less than 100 years since it was first transmitted to the human population HIV-1 infects more than 30 million people worldwide and causes almost 2 million AIDS-related deaths every year. Viruses manipulate cellular genes and pathways to benefit their survival, and the study of cell surface proteins downregulated by viruses has provided insights into both viral pathogenesis and crucial aspects of cell biology. We aimed to identify novel cell surface proteins targeted for downregulation by HIV-1. METHODS: We combined plasma membrane enrichment through selective aminooxybiotinylation with tandem mass tag-based quantitative proteomics (plasma membrane profiling) to map expression timecourses of more than 800 plasma membrane proteins in T cells infected in vitro with HIV-1. Novel substrates of the viral accessory proteins Vpu and Nef were sought by use of deletion viruses and single gene overexpression. FINDINGS: Our proteomic datasets defined more than 100 previously unsuspected cell surface targets of HIV-1, particularly proteins involved in T-cell activation, cell adhesion, and aminoacid transport. In addition to its known targets, Vpu was found to be necessary and sufficient for the downregulation of the aminoacid transporter TOV3. Downregulation of TOV3 was post transcriptional, mediated by the ß-TrCP ubiquitin E3 ligase and occurred via an endolysosomal pathway. TOV3 was highly expressed in primary human CD4 T cells, and depletion of TOV3 by RNA interference markedly impaired the mitogenic response to CD3/CD28 stimulation. We identified alanine as an endogenous TOV3 substrate, and showed that extracellular alanine was crucial for T-cell proliferation. INTERPRETATION: This study suggests that TOV3 downregulation is restricted to Vpu variants from the lineage of HIV-1 group M viruses giving rise to pandemic AIDS. Antagonism of alanine transport in CD4 T cells might contribute to HIV-1 pathogenesis through modulation of virus production, impairment of the adaptive immune response, or enhancement of CD4 T-cell loss. FUNDING: Wellcome Trust, Addenbrooke's Charitable Trust, Raymond and Beverly Sackler Foundation.

3.
J Immunol ; 193(10): 4803-13, 2014 Nov 15.
Article in English | MEDLINE | ID: mdl-25311806

ABSTRACT

Virus or tumor Ag-derived peptides that are displayed by MHC class I molecules are attractive starting points for vaccine development because they induce strong protective and therapeutic cytotoxic T cell responses. In thus study, we show that the MHC binding and consequent T cell reactivity against several HLA-A*02 restricted epitopes can be further improved through the incorporation of nonproteogenic amino acids at primary and secondary anchor positions. We screened more than 90 nonproteogenic, synthetic amino acids through a range of epitopes and tested more than 3000 chemically enhanced altered peptide ligands (CPLs) for binding affinity to HLA-A*0201. With this approach, we designed CPLs of viral epitopes, of melanoma-associated Ags, and of the minor histocompatibility Ag UTA2-1, which is currently being evaluated for its antileukemic activity in clinical dendritic cell vaccination trials. The crystal structure of one of the CPLs in complex with HLA-A*0201 revealed the molecular interactions likely responsible for improved binding. The best CPLs displayed enhanced affinity for MHC, increasing MHC stability and prolonging recognition by Ag-specific T cells and, most importantly, they induced accelerated expansion of antitumor T cell frequencies in vitro and in vivo as compared with the native epitope. Eventually, we were able to construct a toolbox of preferred nonproteogenic residues with which practically any given HLA-A*02 restricted epitope can be readily optimized. These CPLs could improve the therapeutic outcome of vaccination strategies or can be used for ex vivo enrichment and faster expansion of Ag-specific T cells for transfer into patients.


Subject(s)
Antigens, Neoplasm/immunology , Cancer Vaccines/immunology , HLA-A2 Antigen/immunology , Neoplasms/prevention & control , Peptides/immunology , Amino Acid Sequence , Animals , Antigens, Neoplasm/chemistry , Antigens, Neoplasm/genetics , B-Lymphocytes , Cancer Vaccines/administration & dosage , Cancer Vaccines/chemistry , Crystallography, X-Ray , Epitopes , Gene Expression , HLA-A2 Antigen/chemistry , HLA-A2 Antigen/genetics , Humans , Immunization , Mice , Mice, Transgenic , Minor Histocompatibility Antigens/chemistry , Minor Histocompatibility Antigens/genetics , Minor Histocompatibility Antigens/immunology , Models, Molecular , Molecular Sequence Data , Neoplasms/immunology , Peptides/administration & dosage , Peptides/chemistry , Peptides/genetics , Protein Binding , Recombinant Proteins/genetics , Recombinant Proteins/immunology , T-Lymphocytes, Cytotoxic/cytology , T-Lymphocytes, Cytotoxic/immunology , T-Lymphocytes, Cytotoxic/metabolism
4.
Angew Chem Int Ed Engl ; 55(7): 2361-7, 2016 Feb 12.
Article in English | MEDLINE | ID: mdl-26756880

ABSTRACT

Glycosylation patterns in antibodies critically determine biological and physical properties but their precise control is a significant challenge in biology and biotechnology. We describe herein the optimization of an endoglycosidase-catalyzed glycosylation of the best-selling biotherapeutic Herceptin, an anti-HER2 antibody. Precise MS analysis of the intact four-chain Ab heteromultimer reveals nonspecific, non-enzymatic reactions (glycation), which are not detected under standard denaturing conditions. This competing reaction, which has hitherto been underestimated as a source of side products, can now be minimized. Optimization allowed access to the purest natural form of Herceptin to date (≥90 %). Moreover, through the use of a small library of sugars containing non-natural functional groups, Ab variants containing defined numbers of selectively addressable chemical tags (reaction handles at Sia C1) in specific positions (for attachment of cargo molecules or "glycorandomization") were readily generated.


Subject(s)
Antibodies/metabolism , Trastuzumab/metabolism , Antibodies/therapeutic use , Glycosylation , Trastuzumab/therapeutic use
5.
Chembiochem ; 14(1): 123-31, 2013 Jan 02.
Article in English | MEDLINE | ID: mdl-23280887

ABSTRACT

Incorporation of cleavable linkers into peptides and proteins is of particular value in the study of biological processes. Here we describe the synthesis of a cleavable linker that is hypersensitive to oxidative cleavage as the result of the periodate reactivity of a vicinal amino alcohol moiety. Two strategies directed towards the synthesis of a building block suitable for solid-phase peptide synthesis were developed: a chemoenzymatic route, involving L-threonine aldolase, and an enantioselective chemical route; these led to α,γ-diamino-ß-hydroxybutanoic acids in diastereoisomerically mixed and enantiopure forms, respectively. Incorporation of the 1,2-amino alcohol linker into the backbone of a peptide generated a conditional peptide that was rapidly cleaved at very low concentrations of sodium periodate. This cleavable peptide ligand was applied in the generation of MHC exchange reagents for the detection of antigen-specific T cells in peripheral blood cells. The extremely low concentration of periodate required to trigger MHC peptide exchange allowed the co-oxidation of methionine and disulfide residues to be avoided. Conditional MHC reagents hypersensitive to periodate can now be applied without limitations when UV irradiation is undesired or less practical.


Subject(s)
Amino Acids/chemistry , Amino Acids/pharmacology , Disulfides/chemistry , HLA-A2 Antigen/chemistry , HLA-A2 Antigen/metabolism , Periodic Acid/pharmacology , T-Lymphocytes/metabolism , Amino Acid Sequence , Amino Acids/chemical synthesis , Amino Acids/metabolism , Amino Alcohols/chemistry , Biocompatible Materials/chemical synthesis , Biocompatible Materials/chemistry , Biocompatible Materials/metabolism , Biocompatible Materials/pharmacology , Drug Discovery , Humans , Indicators and Reagents/chemistry , Methionine , Oxidation-Reduction , Stereoisomerism , Substrate Specificity , T-Lymphocytes/drug effects
6.
ACS Cent Sci ; 5(12): 1965-1974, 2019 Dec 26.
Article in English | MEDLINE | ID: mdl-31893226

ABSTRACT

Retinaldehyde dehydrogenases belong to a superfamily of enzymes that regulate cell differentiation and are responsible for detoxification of anticancer drugs. Chemical tools and methods are of great utility to visualize and quantify aldehyde dehydrogenase (ALDH) activity in health and disease. Here, we present the discovery of a first-in-class chemical probe based on retinal, the endogenous substrate of retinal ALDHs. We unveil the utility of this probe in quantitating ALDH isozyme activity in a panel of cancer cells via both fluorescence and chemical proteomic approaches. We demonstrate that our probe is superior to the widely used ALDEFLUOR assay to explain the ability of breast cancer (stem) cells to produce all-trans retinoic acid. Furthermore, our probe revealed the cellular selectivity profile of an advanced ALDH1A1 inhibitor, thereby prompting us to investigate the nature of its cytotoxicity. Our results showcase the application of substrate-based probes in interrogating pathologically relevant enzyme activities. They also highlight the general power of chemical proteomics in driving the discovery of new biological insights and its utility to guide drug discovery efforts.

7.
Cancer Cell ; 35(1): 33-45.e6, 2019 01 14.
Article in English | MEDLINE | ID: mdl-30645975

ABSTRACT

Tumor-derived extracellular vesicles (TEV) "educate" healthy cells to promote metastases. We found that melanoma TEV downregulated type I interferon (IFN) receptor and expression of IFN-inducible cholesterol 25-hydroxylase (CH25H). CH25H produces 25-hydroxycholesterol, which inhibited TEV uptake. Low CH25H levels in leukocytes from melanoma patients correlated with poor prognosis. Mice incapable of downregulating the IFN receptor and Ch25h were resistant to TEV uptake, TEV-induced pre-metastatic niche, and melanoma lung metastases; however, ablation of Ch25h reversed these phenotypes. An anti-hypertensive drug, reserpine, suppressed TEV uptake and disrupted TEV-induced formation of the pre-metastatic niche and melanoma lung metastases. These results suggest the importance of CH25H in defense against education of normal cells by TEV and argue for the use of reserpine in adjuvant melanoma therapy.


Subject(s)
Extracellular Vesicles/metabolism , Lung Neoplasms/secondary , Melanoma/pathology , Receptor, Interferon alpha-beta/metabolism , Steroid Hydroxylases/metabolism , Animals , Cell Line, Tumor , Disease Progression , Gene Expression Regulation, Neoplastic/drug effects , Gene Knockout Techniques , Humans , Interferons/pharmacology , Lung Neoplasms/metabolism , Lung Neoplasms/pathology , Melanoma/metabolism , Mice , Neoplasm Metastasis , Oxysterols/metabolism , Reserpine/administration & dosage , Reserpine/pharmacology , Steroid Hydroxylases/genetics , THP-1 Cells
8.
Nat Commun ; 8: 14254, 2017 02 15.
Article in English | MEDLINE | ID: mdl-28198362

ABSTRACT

Ligand-conjugated microparticles of iron oxide (MPIO) have the potential to provide high sensitivity contrast for molecular magnetic resonance imaging (MRI). However, the accumulation and persistence of non-biodegradable micron-sized particles in liver and spleen precludes their clinical use and limits the translational potential of MPIO-based contrast agents. Here we show that ligand-targeted MPIO derived from multiple iron oxide nanoparticles may be coupled covalently through peptide linkers that are designed to be cleaved by intracellular macrophage proteases. The synthesized particles possess potential characteristics for targeted MRI contrast agents, including high relaxivity, unappreciable sedimentation, clearance from circulation and no overt toxicity. Importantly, we demonstrate that these particles are rapidly degraded both in vitro and in vivo, and that the targeted probes can be used for detection of inflammation in vivo using MRI. This approach provides a platform for molecular MRI contrast agents that is potentially more suitable for translation to humans.


Subject(s)
Magnetic Resonance Imaging , Magnetite Nanoparticles/chemistry , Peptide Hydrolases/metabolism , Animals , Antibodies/metabolism , Contrast Media/chemistry , Ferric Compounds/chemistry , Humans , Magnetite Nanoparticles/ultrastructure , Male , Mice , Particle Size , RAW 264.7 Cells , Vascular Cell Adhesion Molecule-1/metabolism
9.
Elife ; 52016 09 30.
Article in English | MEDLINE | ID: mdl-27690223

ABSTRACT

Viruses manipulate host factors to enhance their replication and evade cellular restriction. We used multiplex tandem mass tag (TMT)-based whole cell proteomics to perform a comprehensive time course analysis of >6500 viral and cellular proteins during HIV infection. To enable specific functional predictions, we categorized cellular proteins regulated by HIV according to their patterns of temporal expression. We focussed on proteins depleted with similar kinetics to APOBEC3C, and found the viral accessory protein Vif to be necessary and sufficient for CUL5-dependent proteasomal degradation of all members of the B56 family of regulatory subunits of the key cellular phosphatase PP2A (PPP2R5A-E). Quantitative phosphoproteomic analysis of HIV-infected cells confirmed Vif-dependent hyperphosphorylation of >200 cellular proteins, particularly substrates of the aurora kinases. The ability of Vif to target PPP2R5 subunits is found in primate and non-primate lentiviral lineages, and remodeling of the cellular phosphoproteome is therefore a second ancient and conserved Vif function.


Subject(s)
HIV Infections/pathology , HIV/physiology , Host-Pathogen Interactions , Phosphoproteins/analysis , Proteome/analysis , vif Gene Products, Human Immunodeficiency Virus/metabolism , Cells, Cultured , Humans , Proteomics , Time Factors
10.
Nat Commun ; 7: 13118, 2016 10 26.
Article in English | MEDLINE | ID: mdl-27782209

ABSTRACT

The desire to study biology in situ has been aided by many imaging techniques. Among these, X-ray fluorescence (XRF) mapping permits observation of elemental distributions in a multichannel manner. However, XRF imaging is underused, in part, because of the difficulty in interpreting maps without an underlying cellular 'blueprint'; this could be supplied using contrast agents. Carbon nanotubes (CNTs) can be filled with a wide range of inorganic materials, and thus can be used as 'contrast agents' if biologically absent elements are encapsulated. Here we show that sealed single-walled CNTs filled with lead, barium and even krypton can be produced, and externally decorated with peptides to provide affinity for sub-cellular targets. The agents are able to highlight specific organelles in multiplexed XRF mapping, and are, in principle, a general and versatile tool for this, and other modes of biological imaging.


Subject(s)
Nanotubes, Carbon/chemistry , Spectrometry, X-Ray Emission/instrumentation , Barium/chemistry , Feasibility Studies , Fluorescence , Krypton/chemistry , Lead/chemistry , Peptides/chemistry , Spectrometry, X-Ray Emission/methods
11.
Angew Chem Weinheim Bergstr Ger ; 128(7): 2407-2413, 2016 02 12.
Article in English | MEDLINE | ID: mdl-27546920

ABSTRACT

Glycosylation patterns in antibodies critically determine biological and physical properties but their precise control is a significant challenge in biology and biotechnology. We describe herein the optimization of an endoglycosidase-catalyzed glycosylation of the best-selling biotherapeutic Herceptin, an anti-HER2 antibody. Precise MS analysis of the intact four-chain Ab heteromultimer reveals nonspecific, non-enzymatic reactions (glycation), which are not detected under standard denaturing conditions. This competing reaction, which has hitherto been underestimated as a source of side products, can now be minimized. Optimization allowed access to the purest natural form of Herceptin to date (≥90 %). Moreover, through the use of a small library of sugars containing non-natural functional groups, Ab variants containing defined numbers of selectively addressable chemical tags (reaction handles at Sia C1) in specific positions (for attachment of cargo molecules or "glycorandomization") were readily generated.

12.
Science ; 348(6242): 1481-1485, 2015 Jun 26.
Article in English | MEDLINE | ID: mdl-26022416

ABSTRACT

Forward genetic screens in Drosophila melanogaster for modifiers of position-effect variegation have revealed the basis of much of our understanding of heterochromatin. We took an analogous approach to identify genes required for epigenetic repression in human cells. A nonlethal forward genetic screen in near-haploid KBM7 cells identified the HUSH (human silencing hub) complex, comprising three poorly characterized proteins, TASOR, MPP8, and periphilin; this complex is absent from Drosophila but is conserved from fish to humans. Loss of HUSH components resulted in decreased H3K9me3 both at endogenous genomic loci and at retroviruses integrated into heterochromatin. Our results suggest that the HUSH complex is recruited to genomic loci rich in H3K9me3, where subsequent recruitment of the methyltransferase SETDB1 is required for further H3K9me3 deposition to maintain transcriptional silencing.


Subject(s)
Antigens, Neoplasm/metabolism , Chromosomal Position Effects , Gene Silencing , Histones/metabolism , Multiprotein Complexes/metabolism , Nuclear Proteins/metabolism , Phosphoproteins/metabolism , Animals , Antigens, Neoplasm/genetics , Conserved Sequence , Drosophila melanogaster/genetics , Drosophila melanogaster/metabolism , Evolution, Molecular , Genes, Reporter , Genetic Loci , Green Fluorescent Proteins/genetics , HeLa Cells , Heterochromatin/metabolism , Histone-Lysine N-Methyltransferase , Humans , Immunoprecipitation , Multiprotein Complexes/genetics , Nuclear Proteins/genetics , Phosphoproteins/genetics , Protein Methyltransferases/metabolism
13.
Cell Host Microbe ; 18(4): 409-23, 2015 Oct 14.
Article in English | MEDLINE | ID: mdl-26439863

ABSTRACT

Critical cell surface immunoreceptors downregulated during HIV infection have previously been identified using non-systematic, candidate approaches. To gain a comprehensive, unbiased overview of how HIV infection remodels the T cell surface, we took a distinct, systems-level, quantitative proteomic approach. >100 plasma membrane proteins, many without characterized immune functions, were downregulated during HIV infection. Host factors targeted by the viral accessory proteins Vpu or Nef included the amino acid transporter SNAT1 and the serine carriers SERINC3/5. We focused on SNAT1, a ß-TrCP-dependent Vpu substrate. SNAT1 antagonism was acquired by Vpu variants from the lineage of SIVcpz/HIV-1 viruses responsible for pandemic AIDS. We found marked SNAT1 induction in activated primary human CD4+ T cells, and used Consumption and Release (CoRe) metabolomics to identify alanine as an endogenous SNAT1 substrate required for T cell mitogenesis. Downregulation of SNAT1 therefore defines a unique paradigm of HIV interference with immunometabolism.


Subject(s)
CD4-Positive T-Lymphocytes/chemistry , Cell Membrane/chemistry , HIV-1/physiology , Host-Pathogen Interactions , Human Immunodeficiency Virus Proteins/metabolism , Membrane Proteins/analysis , Viral Regulatory and Accessory Proteins/metabolism , nef Gene Products, Human Immunodeficiency Virus/metabolism , Amino Acids/metabolism , CD4-Positive T-Lymphocytes/virology , Proteome/analysis , Proteomics/methods
14.
Front Chem ; 2: 15, 2014.
Article in English | MEDLINE | ID: mdl-24790983

ABSTRACT

Unnatural amino acid (UAA) incorporation by amber codon suppression offers scientists a powerful tool to modify the properties of proteins at will. UAA incorporation has been used for a plethora of fundamental research applications and, more recently, also for the selective modification of therapeutic proteins. In this review most recent developments in Escherichia coli codon expansion and, unnatural amino acid incorporation are discussed together with some remarkable recent developments in improved efficient UAA incorporation. We focus on the generation of proteins that hold promise for future therapeutic applications that would be impossible to obtain without unnatural amino acid incorporation, including the generation of bi-specific antibodies and antibody drug conjugates.

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